[1] 仇玉霞.河北省盐碱地开发利用措施与治理建议[J].河北农业,2019(4):62-64 [2] 冯伟,刘忠宽,刘振宇,等.河北省盐碱地分布成因及改良利用技术研究[J].河北农业科学,2015,19(1):56-60 [3] 李倩茹,贾彦龙,王慧军,等.基于生态功能区的河北省生态系统服务权衡与协同分析[J].地理学报,2023,78(11):2833-2849 [4] 吴星月,姚红丽,王北南,等.沧州盐碱地紫花苜蓿根际促生细菌的筛选[J].草业科学,2017,34(11):2211-2217 [5] 谢楠,刘振宇,冯伟,等.沧州地区29个紫花苜蓿品种生产性能评价[J].河北农业科学,2016,20(6):19-26 [6] 朱湘宁,郭继勋,梁存柱,等.华北平原地区灌溉对苜蓿产量及土壤水分的影响[J].中国草地,2002,24(6):32-37 [7] 石嘉琦,刘忠宽,王东奎,等.河北滨海盐碱地14个苜蓿品种光合性能与产量性状分析[J].草地学报,2023,31(7):2107-2115 [8] 孙延亮,赵宇哲,魏孔钦,等.不同秋眠级紫花苜蓿茎和叶的碳、氮、磷化学计量特征[J].中国草地学报,2022,44(5):9-19 [9] 周彤,师尚礼,陈建纲,等.紫花苜蓿与3种多年生禾本科牧草轮作的土壤养分生长季动态比较[J].草原与草坪,2021,41(3):19-25 [10] 石嘉琦,周繁,王烁凯,等.行距和播量对河北滨海盐碱地苜蓿光合特性及产量的影响[J].草地学报,2023,31(8):2554-2563 [11] 索建军,扬江平,孙栋,等.紫花苜蓿全生长期蒸散变化研究[J].农业开发与装备,2017(11):66-67,79 [12] 杨洪涛.盐碱化紫花苜蓿人工草地土壤水盐特征及优化调控[D].哈尔滨:中国科学院大学(中国科学院东北地理与农业生态研究所),2019:7-10 [13] 范文波,刘换芳,朱保荣,等.弃耕地苜蓿耗水规律及灌溉制度研究[J].水土保持学报,2003,17(3):165-166,173 [14] WRIGHT J L. Daily and seasonal evapotranspiration and yield of irrigated alfalfa in Southern Idaho[J]. Agronomy Journal,1988,80(4):662-669 [15] 邢新海,田魁祥.河北省黑龙港地区苜蓿发展与水土生态系统分析[J].农业现代化研究,1992,13(4):218-221 [16] 陈凤林,刘文清.几种栽培牧草需水规律的初步研究[J].中国草原,1982,4(3):38-43 [17] XIE J K,LIU L,WANG Y T,et al. Changes in actual evapotranspiration and its dominant drivers across the Three-River Source Region of China during 1982-2014[J]. Hydrology Research,2022,53(2):297-313 [18] WILLIAMS D G,CABLE W,HULTINE K,et al. Evapotranspiration components determined by stable isotope, sap flow and eddy covariance techniques[J]. Agricultural and Forest Meteorology,2004,125(3/4):241-258 [19] 刘元波,邱国玉,张宏昇,等.陆域蒸散的测算理论方法:回顾与展望[J].中国科学:地球科学,2022,52(3):381-399 [20] SHI M J,WORDEN J R,BAILEY A,et al. Amazonian terrestrial water balance inferred from satellite-observed water vapor isotopes[J]. Nature Communications,2022,13(1):2686 [21] HU Z M,YU G R,ZHOU Y L,et al. Partitioning of evapotranspiration and its controls in four grassland ecosystems:Application of a two-source model[J]. Agricultural and Forest Meteorology,2009,149(9):1410-1420 [22] SHUTTLEWORTH W J,WALLACE J S. Evaporation from sparse crops-an energy combination theory[J]. Quarterly Journal of the Royal Meteorological Society,1985,111(469):839-855 [23] ZHANG L F,CHEN Z G,ZHANG X,et al. Evapotranspiration and its partitioning in alpine meadow of Three-River Source Region on the Qinghai-Tibetan Plateau[J]. Water,2021,13(15):2061 [24] ZHANG L F,SCHLAEPFER D R,CHEN Z G,et al. Precipitation and evapotranspiration partitioning on the Three-River Source Region:A comparison between water balance and energy balance models[J]. Journal of Hydrology:Regional Studies,2021,38:100936 [25] CHEN H,JIANG A Z,HUANG J J, et al. An enhanced shuttleworth-Wallace model for simulation of evapotranspiration and its components[J]. Agricultural and Forest Meteorology,2022,313:108769 [26] MILLY P C D,DUNNE K A. Potential evapotranspiration and continental drying[J]. Nature Climate Change,2016,6:946-949 [27] MALLICK K,TOIVONEN E,TREBS I,et al. Bridging thermal infrared sensing and physically-based evapotranspiration modeling:from theoretical implementation to validation across an aridity gradient in Australian ecosystems[J]. Water Resources Research,2018,54(5):3409-3435 [28] 王宇,周莉,贾庆宇,等.基于Shuttleworth-Wallace模型的水稻蒸散组分模拟及其特征分析[J].中国农业气象,2017,38(11):709-719 [29] 乔英,马英杰,辛明亮.基于改进S-W与结构方程模型的干旱区枣园蒸散特征分析[J].农业机械学报,2021,52(8):307-317 [30] ZHOU M C,ISHIDAIRA H,HAPUARACHCHI H P,et al. Estimating potential evapotranspiration using Shuttleworth-Wallace model and NOAA-AVHRR NDVI data to feed a distributed hydrological model over the Mekong River basin[J]. Journal of Hydrology,2006,327(1/2):151-173 [31] 张立锋,张继群,张翔,等.三江源区退化高寒草甸蒸散的变化特征[J].草地学报,2017,25(2):273-281 [32] 康燕霞,姜渊博,齐广平,等.红豆草与无芒雀麦混播草地生产力提升的水分调控模式研究[J].草业学报,2023,32(8):115-128 [33] 吴锦奎,陈军武,吴灏,等.疏勒河上游高寒草甸蒸散对比研究[J].地理科学,2013,33(1):97-103 [34] CHEN H,HUANG J J,MCBEAN E. Partitioning of daily evapotranspiration using a modified shuttleworth-wallace model, random Forest and support vector regression, for a cabbage farmland[J]. Agricultural Water Management,2020,228:105923 [35] WANG L,LIU H Z,BERNHOFER C. Grazing intensity effects on the partitioning of evapotranspiration in the semiarid typical steppe ecosystems in Inner Mongolia[J]. International Journal of Climatology,2016,36(12):4130-4140 [36] 陈小平.科尔沁沙丘-草甸湿地水热碳通量变化及响应机制研究[D].呼和浩特:内蒙古农业大学,2018:37-51 [37] DONG J,BERGMANN D C. Stomatal patterning and development[J]. Current Topics in Developmental Biology,2010,91:267-297 [38] ZHANG F W,LI H Q,WANG W Y,et al. Net radiation rather than surface moisture limits evapotranspiration over a humid alpine meadow on the northeastern Qinghai‐Tibetan Plateau[J]. Ecohydrology,2018,11(2):e1925 [39] 周雪彤,孙文义,穆兴民,等. 1990-2020年三江源水源涵养能力时空变化及影响因素[J].生态学报,2023,43(23):9844-9855 [40] YANG Y T,RODERICK M L,GUO H,et al. Evapotranspiration on a greening Earth[J]. Nature Reviews Earth& Environment,2023,4:626-641 |